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3D/3D registration of coronary CTA and biplane XA reconstructions for improved image guidance

机译:3D / 3D冠状动脉CTA和双翼XA重建的注册,用于改进图像引导

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Purpose: The authors aim to improve image guidance during percutaneous coronary interventions of chronic total occlusions (CTO) by providing information obtained from computed tomography angiography (CTA) to the cardiac interventionist. To this end, the authors investigate a method to register a 3D CTA model to biplane reconstructions. Methods: The authors developed a method for registering preoperative coronary CTA with intraop-erative biplane x-ray angiography (XA) images via 3D models of the coronary arteries. The models are extracted from the CTA and biplane XA images, and are temporally aligned based on CTA reconstruction phase and XA ECG signals. Rigid spatial alignment is achieved with a robust probabilistic point set registration approach using Gaussian mixture models (GMMs). This approach is extended by including orientation in the Gaussian mixtures and by weighting bifurcation points. The method is evaluated on retrospectively acquired coronary CTA datasets of 23 CTO patients for which biplane XA images are available. Results: The Gaussian mixture model approach achieved a median registration accuracy of 1.7 mm. The extended GMM approach including orientation was not significantly different (P > 0.1) but did improve robustness with regards to the initialization of the 3D models. Conclusions: The authors demonstrated that the GMM approach can effectively be applied to register CTA to biplane XA images for the purpose of improving image guidance in percutaneous coronary interventions.
机译:目的:作者旨在通过向心脏介绍(CTA)提供从计算机断层血管造影(CTA)获得的信息来改善慢性总闭塞(CTO)的经皮冠状动脉干预的图像引导。为此,作者研究了将3D CTA模型注册到生物悬浮重建的方法。方法:作者开发用于经由冠状动脉的3D模型intraop-erative双平面X射线血管造影(XA)图像配准冠状动脉的术前CTA的方法。从CTA和双XA图像中提取模型,并基于CTA重建阶段和XA ECG信号进行时间上对齐。利用高斯混合模型(GMMS),利用鲁棒的概率点设定登记方法实现了刚性空间对准。通过在高斯混合物中的方向和加权分叉点来延伸这种方法。通过回顾性地获得的方法评估了23 CTO患者的回顾性获取的冠状动脉CTA数据集,其可用于其双翼飞机Xa图像。结果:高斯混合模型方法达到1.7毫米的中位数定位精度。包括定向的扩展GMM方法没有显着差异(p> 0.1),但是在3D模型的初始化方面确实提高了鲁棒性。结论:作者证明了GMM方法可以有效地应用于将CTA注册到生物XA图像,以提高经皮冠状动脉干预中的图像引导。

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